which phrase best describes a periodic waveworld economic forum leadership program graduates

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What are the disadvantages of shielding a thermometer? [)]TJ 9 0 0 9 553.4114 541.7136 Tm 0 Tc 0 Tw (1)Tj 11.5 0 0 11.5 557.9114 541.7136 Tm (])Tj ET Q q 1 i 171.639 283.821 21 -23.107 re 561.741 541.714 m W* n -1 793 614 -794 re 12 782 m W n 0 792.06 612 -792 re W n 0 G 0 J 0 j 0.5 w 10 M []0 d 173.639 271.765 m 191.358 271.765 l S BT /F3 1 Tf 11 0 0 11 174.389 273.8585 Tm 0 g 0 Tc 0 Tw (4)Tj 7 0 0 7 187.1078 277.1085 Tm (2)Tj /F9 1 Tf 11 0 0 11 180.4202 273.8585 Tm ()Tj /F5 1 Tf -0.0171 -0.8949 TD (g)Tj ET Q q 1 i -1 793 614 -794 re 12 782 m W n 0 792.06 612 -792 re W n 42 62 528 -21 re f BT /F1 1 Tf 7 0 0 7 43 53.5807 Tm 0 g -0.0001 Tc 0.0278 Tw (PhysicsJune 03)Tj /F3 1 Tf 10 0 0 10 298.6724 53.5807 Tm 0 Tw ([11])Tj 9 0 0 9 538.0142 53.5807 Tm -0.0002 Tc ([OVER])Tj ET 0 G 0 J 0 j 1 w 10 M []0 d 124.009 180.95 m 488.63 180.95 l S 306 744 m 306 190.958 l S 1 g 173.02 615.167 91.079 -16.148 re f 81.441 615.167 91.079 -16.148 re f 80.941 632.316 183.658 -117.039 re f 81.441 631.816 74.291 -32.797 re f BT /F2 1 Tf 10 0 0 10 94.1959 617.5122 Tm 0 g (Length)Tj /F8 1 Tf 3.6376 0 TD 0 Tc (\()Tj /F10 1 Tf 11.5 0 0 11.5 133.9 617.5122 Tm ()Tj /F8 1 Tf 10 0 0 10 139.65 617.5122 Tm (\))Tj -3.9667 -1.2 TD -0.0002 Tc (\(meters\))Tj ET 1 g 156.266 631.816 107.833 -32.797 re f BT /F2 1 Tf 10 0 0 10 160.2118 618.3297 Tm 0 g -0.0001 Tc 0.0278 Tw [(Square of P)29.7(eriod)]TJ /F8 1 Tf 8.3314 0 TD -0.0004 Tc 0 Tw (\(T)Tj 6.95 0 0 6.95 252.9618 621.6298 Tm 0 Tc (2)Tj 10 0 0 10 256.8255 618.3297 Tm (\))Tj -7.0521 -1.2 TD -0.0001 Tc (\(seconds)Tj 6.95 0 0 6.95 226.8688 609.6298 Tm 0 Tc (2)Tj 10 0 0 10 230.7324 606.3297 Tm (\))Tj ET 1 g 81.441 598.519 75.079 -16.148 re f BT 10 0 0 10 106.4736 587.8959 Tm 0 g -0.0001 Tc (0.100)Tj ET 1 g 157.066 598.519 107.033 -16.148 re f BT 10 0 0 10 201.1313 587.8959 Tm 0 g (0.410)Tj ET 1 g 81.441 581.871 74.291 -16.149 re f BT 10 0 0 10 106.0795 571.2476 Tm 0 g (0.300)Tj ET 1 g 157.466 581.871 106.633 -16.149 re f BT 10 0 0 10 201.0545 571.2476 Tm 0 g (1.18)Tj ET 1 g 81.441 565.222 74.946 -16.148 re f BT 10 0 0 10 106.407 554.5992 Tm 0 g (0.500)Tj ET 1 g 156.399 565.222 107.7 -16.148 re f BT 10 0 0 10 200.5213 554.5992 Tm 0 g (1.91)Tj ET 1 g 81.441 548.574 74.291 -16.148 re f BT 10 0 0 10 106.0795 537.9509 Tm 0 g (0.700)Tj ET 1 g 156.132 548.574 107.967 -16.148 re f BT 10 0 0 10 200.388 537.9509 Tm 0 g (2.87)Tj ET 1 g 81.441 531.926 75.479 -16.149 re f BT 10 0 0 10 106.6735 521.3027 Tm 0 g (0.900)Tj ET 1 g 157.066 531.926 107.033 -16.149 re f BT 10 0 0 10 200.8547 521.3027 Tm 0 g (3.60)Tj ET 0.5 w 81.191 632.316 m 81.191 515.277 l 264.349 632.316 m 264.349 515.277 l 80.941 632.066 m 264.599 632.066 l 80.941 598.769 m 264.599 598.769 l 80.941 582.121 m 264.599 582.121 l 80.941 565.472 m 264.599 565.472 l 80.941 548.824 m 264.599 548.824 l 80.941 532.176 m 264.599 532.176 l 80.941 515.527 m 264.599 515.527 l 155.77 632.316 m 155.77 515.277 l S Q )Tj -17.4919 -1.1304 TD 0.0282 Tw ([Show all work, including the equation and sub-)Tj T* 0.025 Tw [(stitution with units.] . )]TJ 2.6087 -1.8261 TD -0.0101 Tc 0.0619 Tw (Louis de Broglie extended the idea of wave-)Tj -1.5652 -1.4783 TD -0.0102 Tc 0 Tw (particle)Tj 3.3568 0 TD -0.0001 Tc 0.0789 Tw [(duality to all of nature with his matter)54.8(-)]TJ -3.3568 -1.4783 TD -0.0154 Tw (wave equation, )Tj /F9 1 Tf 6.3819 0 TD -0.0002 Tc 0 Tw ( )Tj /F3 1 Tf 3.2291 0 TD -0.0001 Tc -0.0153 Tw (, where )Tj /F9 1 Tf 3.2728 0 TD 0 Tc 0 Tw ()Tj /F3 1 Tf 0.7835 0 TD -0.0001 Tc -0.0154 Tw [(is the particle)91.7(s)]TJ -13.6672 -1.4783 TD 0 Tw (wavelength, )Tj /F5 1 Tf 5.1894 0 TD -0.0002 Tc (m )Tj /F3 1 Tf 1.0544 0 TD -0.0001 Tc 0.0266 Tw (is its mass, )Tj /F5 1 Tf 4.6505 0 TD 0 Tc 0 Tw (v)Tj /F3 1 Tf 0.7575 0 TD -0.0001 Tc 0.0265 Tw [(is its velocity)73.8(, and )]TJ /F5 1 Tf 7.5172 0 TD 0 Tc 0 Tw (h)Tj /F3 1 Tf -19.169 -1.4783 TD -0.0001 Tc 0.0249 Tw [(is Planck)91.7(s constant. . . . . . . A wave transfers its energy to a material A wave passes through a material. . ( The wave period is often referenced in seconds, e.g. C: 2.0 Hz . This is a wave. . . C: remain the same, The time required for a wave to complete one full cycle is called the wave's . . )Tj 5.7602 0 TD (. )]TJ -1.328 -2.4 TD 0.078 Tc -0.078 Tw [(6 . The period of her heartbeat is D: replaced by a higher frequency tuning fork, The energy of a water wave is closely related to its You can put one half wavelength on the string, one, -Frequency -Wave Speed -Amplitude -Wavelength all that apply, Frequency and wavelength Wavelength and wave speed Amplitude and wavelength Amplitude and frequency 2. . . endobj . Do clownfish have a skeleton or exoskeleton. Atomic radii decrease from left to right across a period and decrease from top to bottom in a group. . )Tj 0 -16.6087 TD -0.0001 Tc (The slope of the graph would have units of)Tj 0 -1.4783 TD -0.0002 Tc 0 Tw [(\(1\))-500.2(j)0(oules)-6538.1(\(3\))-500.2(w)-0.1(atts)]TJ 0 -1.1304 TD -0.0001 Tc [(\(2\))-500.1(seconds)-5705(\(4\))-500.1(newtons)]TJ 22.4573 50.8696 TD 0.2442 Tw [(41)-413.2(In the diagram below)73.8(, two positively charged)]TJ 1.413 -1.1304 TD 0 Tw (spheres, )Tj /F5 1 Tf 3.8985 0 TD 0 Tc (A)Tj /F3 1 Tf 1.1511 0 TD -0.0001 Tc (and )Tj /F5 1 Tf 2.0208 0 TD 0 Tc (B)Tj /F3 1 Tf 0.648 0 TD -0.0001 Tc 0.2532 Tw (, of masses )Tj /F5 1 Tf 5.4239 0 TD 0 Tc 0 Tw (m)Tj 7.993 0 0 7.993 499.6905 716.6337 Tm (A)Tj /F3 1 Tf 11.5 0 0 11.5 510.6559 720.4286 Tm -0.0001 Tc (and )Tj /F5 1 Tf 2.0208 0 TD 0 Tc (m)Tj 7.993 0 0 7.993 542.8397 716.6337 Tm (B)Tj /F3 1 Tf 11.5 0 0 11.5 553.8052 720.4286 Tm -0.0002 Tc (are)Tj -18.5756 -1.1304 TD -0.0001 Tc 0.025 Tw (located a distance )Tj /F5 1 Tf 7.6341 0 TD 0 Tc 0 Tw (d)Tj /F3 1 Tf 0.8119 0 TD -0.0001 Tc (apart. B.) . . a. amplitude of the wave. )Tj -5.7488 -20.6087 TD (Which path will the ray follow in the quartz? . A.adjective phrase B.adverb phrase C.appositive phrase D.misplaced modifier A? . feet/ frequency = (wave speed)/(wavelength) You can do, A. The magnitude)Tj T* 0.0268 Tw (of the force of air friction acting on the skydiver)Tj T* 0.025 Tw (is approximately)Tj 0 -1.4783 TD -0.0002 Tc [(\(1\))-500.2(0)-0.1( N)-7390.6(\()0.1(3\))-500.2(60 N)]TJ 0 -1.1304 TD [(\(2\))-500.2(6)-0.1( N)-7390.6(\()0.1(4\))-500.2(600 N)]TJ -0.913 -2.8696 TD 0 Tc 0 Tw (9)Tj 0.913 0 TD -0.0001 Tc 0.0687 Tw (An astronaut weighs 8.00 )Tj /F9 1 Tf 10.8529 0 TD 0 Tc 0 Tw ()Tj /F3 1 Tf 0.8675 0 TD (10)Tj 7.993 0 0 7.993 212.5987 635.7719 Tm (2)Tj 11.5 0 0 11.5 220.26 631.9768 Tm -0.0001 Tc 0.0687 Tw (newtons on the)Tj -13.4366 -1.1304 TD 0.2959 Tw (surface of Earth. D. The wavelength. )-1322(1)0(3)-200( . . When the energy of a light, A. frequency B. period C. wavelength D. amplitude E. rarefaction This is frequency right? The time interval among the two waves is an odd multiple of T/2, = (2n-1) T/2. Which phrase best describes this sequence of diagrams? )Tj /F1 1 Tf -26.7939 -2.0909 TD -0.0001 Tc 0.0278 Tw [(Record your answers to Part A and Part B1 on this answer sheet. The phrase which best describes a period on the periodic table is. endobj B: electromagnetic waves that require a medium for transmission . D: wavelength, A periodic wave is produced by a vibrating tuning fork. Each point of the medium moves up and down through 5.0 mm. its ( B ) your welcom plz thumbs up just got to tuch it. Which type of kind of wave causes the medium to vibrate, ok I know i need the equation T=1/f and the wave, Verse one: 1. If the particles of the rock are vibrating in a north-south direction, the wave must be A gamma ray has more energy than a radio wave because it has a shorter wavelength and a lower frequency. A single vibratory disturbance moving through a medium is called As a transverse wave travels through a medium, the individual particles of the medium move A ringing bell is located in a chamber. . Two points or particles that are in the same phasei.e., points that have completed identical fractions of their periodic motionare . [Show all)Tj T* 0.2373 Tw (work, including the equation and substitution)Tj T* 0.025 Tw [(with units.] C: Both types of waves propagate in a vacuum. )]TJ -1.328 -2.4 TD 0.078 Tc -0.078 Tw [(9 . . 4. c . Projectile )]TJ /F5 1 Tf 8.8673 0 TD 0 Tc 0 Tw (B)Tj /F3 1 Tf 0.9545 0 TD -0.0001 Tc 0.0565 Tw (is launched horizontally)Tj -9.8217 -1.1304 TD 0.0259 Tw [(from the same location at a speed of 30. meters)]TJ T* 0.025 Tw (per second. . )]TJ T* 0.0095 Tw (The two pieces attract again. . Lorem ipsum dolor sit amet, consectetur adipisicing elit, sed do . )-1470.4(2)0(6)-429.5( . . D: move northward, only, A distance of 1.0 10^2 meter separates successive crests of a periodic wave produced in a shallow tank of water. . Light is an example of a transverse wave. . 9. b . . . D. a digital signal, which is in less likely to degrade. . Note that. [V)54.8(ectors are not)]TJ T* 0.025 Tw (drawn to scale. A. . endstream endobj 55 0 obj<>/ProcSet[/PDF/Text]/ExtGState<>>> endobj 56 0 obj<> endobj 57 0 obj<>stream )Tj ET 1 g 44.677 635.774 519.415 -177.19 re f Q 0 0 0 1 K 0 J 0 j 0.5 w 3.864 M []0 d /GS2 gs 1 i 181.078 580.187 m 181.078 628.187 l S 1 w 180.929 592.187 m 208.078 592.187 l 208.078 598.187 l 247.078 598.187 l 247.078 592.187 l 289.228 592.187 l S 0.5 w 178.078 592.187 m 181.078 592.187 l 178.078 580.187 m 289.078 580.187 l S BT /F8 1 Tf 10 0 0 10 169.517 614.1868 Tm 0 0 0 1 k 0 Tc 0 Tw (2)Tj 0 -1.2 TD (1)Tj T* (0)Tj -0.5562 -1.2 TD (1)Tj 11 0 0 11 216.375 559.3868 Tm (\( 1 \))Tj ET 181.078 484.187 m 181.078 532.187 l S 1 w 180.929 496.187 m 211.078 496.187 l 211.078 520.187 l 217.078 520.187 l 217.078 502.187 l 241.078 502.187 l 241.078 520.187 l 247.078 520.187 l 247.078 496.187 l 289.228 496.187 l S 0.5 w 178.078 496.187 m 181.078 496.187 l 178.078 484.187 m 289.078 484.187 l S BT 10 0 0 10 169.517 518.187 Tm (2)Tj T* (1)Tj T* (0)Tj -0.5562 -1.2 TD (1)Tj 11 0 0 11 216.375 463.387 Tm (\( 2 \))Tj ET 342.929 580.187 m 342.929 628.187 l S 1 w 342.78 592.187 m 384.929 592.187 l 384.929 616.187 l 396.929 616.187 l 396.929 592.187 l 451.079 592.187 l S 0.5 w 339.929 592.187 m 342.929 592.187 l 339.929 580.187 m 450.929 580.187 l S BT 10 0 0 10 331.3678 614.1868 Tm (2)Tj T* (1)Tj T* (0)Tj -0.5561 -1.2 TD (1)Tj 11 0 0 11 378.2257 559.3868 Tm (\( 3 \))Tj ET 342.929 484.187 m 342.929 532.187 l S 1 w 342.78 496.187 m 378.929 496.187 l 390.929 520.187 l 402.929 496.187 l 451.079 496.187 l S 0.5 w 339.929 496.187 m 342.929 496.187 l 339.929 484.187 m 450.929 484.187 l S BT 10 0 0 10 331.3678 518.187 Tm (2)Tj T* (1)Tj T* (0)Tj -0.5561 -1.2 TD (1)Tj 11 0 0 11 378.2257 463.387 Tm (\( 4 \))Tj ET q -1 793 614 -794 re 12 782 m W n 0 792.06 612 -792 re W n 1 g /GS1 gs 44.677 726.774 516.984 -62.007 re f Q 263.024 673.123 m 263.024 721.123 l S 1 w 263.049 685.123 m 278.524 685.123 l 278.524 697.123 l 290.524 697.123 l 290.524 685.123 l 326.524 685.123 l 326.524 697.123 l 338.524 697.123 l 338.524 685.123 l 353.799 685.123 l S 0.5 w 260.024 685.123 m 263.024 685.123 l 260.024 673.123 m 371.024 673.123 l S 1 w 292.297 691.123 m 299.184 691.123 l S 298.767 691.123 m 298.767 693.623 l 305.017 691.123 l 298.767 688.623 l 298.767 691.123 l f* 324.008 691.123 m 317.122 691.123 l S 317.539 691.123 m 317.539 688.623 l 311.288 691.123 l 317.539 693.623 l 317.539 691.123 l f* BT 10 0 0 10 251.4626 707.1228 Tm (2)Tj T* (1)Tj T* (0)Tj -0.5562 -1.2 TD (1)Tj 11 0 0 11 280.8557 687.123 Tm 3.6966 Tc (AB)Tj ET q -1 793 614 -794 re 12 782 m W n 0 792.06 612 -792 re W n 1 g /GS1 gs 42.151 428.148 528 -264.308 re f BT /F3 1 Tf 11.5 0 0 11.5 48.9014 418.616 Tm 0 g -0.0001 Tc 0.1438 Tw [(46)-413.2(Which graph best represents the motion of an)]TJ 1.413 -1.1304 TD 0.2615 Tw (object that is )Tj /F5 1 Tf 6.3092 0 TD 0 Tw (not)Tj /F3 1 Tf 1.8443 0 TD 0.2615 Tw (in equilibrium as it travels)Tj -8.1534 -1.1304 TD 0.025 Tw (along a straight line? (b) What is the period of the wave? . )Tj -7.2103 -10.087 TD -0.0001 Tc 0.1711 Tw (If a compass is placed at point )Tj /F5 1 Tf 13.8107 0 TD 0 Tc 0 Tw (P)Tj /F3 1 Tf 0.977 0 TD -0.0001 Tc 0.1711 Tw (in the same)Tj -14.7877 -1.1304 TD 0.0625 Tw (plane as the magnetic field, which arrow repre-)Tj T* -0.0014 Tw (sents the direction the north end of the compass)Tj T* 0.025 Tw (needle will point? -The wavelength. . The earthquake. b. . C: 5.0 m . Destructive Interference Equation. endstream endobj 40 0 obj<>/ProcSet[/PDF/Text]/ExtGState<>>> endobj 41 0 obj<> endobj 42 0 obj<>stream . The frequency of this light is . )78( )]TJ 1.328 0 TD 0 Tc 0 Tw [(. A: 1 Hz Wave doesnt necessarily mean that repeating patterns are involved. B. rock )Tj 22.5 2.2609 TD -0.0093 Tw [(47)-413.2(Three forces act on a box on an inclined plane as)]TJ 1.413 -1.1304 TD 0.198 Tw [(shown in the diagram below)73.8(. 5) an echo of sound in a canyon . . . C. The distance between wave crests . . . . A: transverse . The time it takes for a wave to repeat C. The distance between wave crests D. The distance a wave is from the starting point 2. . . . . A: Both types of waves travel at the same speed. )-1090.6(School)-639.5( . Answer in units of Hz. . Hence, sound cannot propagate in a vacuum as there will be no material to transfer sound waves. 1 g /GS1 gs 12 782 m 12 782 l f q 1 i -1 793 614 -794 re 12 782 m W n 0 792.06 612 -792 re W n 42 62 528 -21 re f 42 742.585 528 -62.052 re f BT /F1 1 Tf 11.5 0 0 11.5 294.1191 733.0524 Tm 0 g -0.0002 Tc 0.0278 Tw (Part B2)Tj -6.127 -1.6522 TD -0.0001 Tc [(Answer all questions in this part. The frequency is. . . )Tj 0 -1.4783 TD -0.0001 Tc 0.025 Tw [(\(1\))-500.1(0)-0.1(.00 N)-6140.5(\()0.2(3\))-500.1(1.60 )]TJ /F9 1 Tf 14.2992 0 TD -0.0002 Tc 0 Tw ( )Tj /F3 1 Tf 0.8238 0 TD 0 Tc (10)Tj 7.993 0 0 7.993 251.154 579.7719 Tm (3)Tj 11.5 0 0 11.5 258.3128 575.9768 Tm (N)Tj -16.7456 -1.1304 TD -0.0001 Tc [(\(2\))-500.1(2.00 )]TJ /F9 1 Tf 3.6905 0 TD 0 Tc ()Tj /F3 1 Tf 0.8238 0 TD (10)Tj 7.993 0 0 7.993 129.154 566.7719 Tm (2)Tj 11.5 0 0 11.5 136.3128 562.9768 Tm 3.6938 Tc (N\()Tj 4.8046 0 TD -0.0001 Tc [(4\))-500.1(3.20 )]TJ /F9 1 Tf 3.3578 0 TD 0 Tc ()Tj /F3 1 Tf 0.8238 0 TD (10)Tj 7.993 0 0 7.993 251.154 566.7719 Tm (3 )Tj 11.5 0 0 11.5 257.3482 562.9768 Tm (N)Tj -18.0747 -2.8696 TD (10)Tj 1.413 0 TD 0.0199 Tc 0.3789 Tw (A 10.-newton force is required to hold a)Tj 0 -1.1304 TD -0.0001 Tc 0.1467 Tw [(stretched spring 0.20 meter from its rest posi-)]TJ T* 0.0833 Tw (tion. B: the distance that one cycle of a wave will travel C: the number of vibrations produced per minute D: the length of, A. the distance that one cycle of a wave will travel B. the number of waves that pass a certain point within a certain time C. the length of a wave over a specified length of time D. the, A) If you decrease the tension in a string, the frequency of its fundamental vibration will get lower B) If you have a standing wave, A)If you increase the tension in a string, the frequency of its fundamental vibration will get, Which statement BEST compares a gamma ray to a radio wave? . )]TJ T* 0 Tc 0 Tw (Y)Tj 0.5188 0 TD -0.0002 Tc 0.1273 Tw [(ou may use scrap paper to work out the answers to the questions, but be sure to)]TJ -0.5188 -1.1818 TD -0.0001 Tc 0.0278 Tw [(record all your answers on the answer sheet and answer booklet. A. @xt` 8j490@_!lp BiS.RATH[xp . . )]TJ 31.5521 0 TD (. Frequency If the frequency of a sound wave is doubled the period of the sound wave is halved. How much work must be done by friction to)Tj T* 0.025 Tw [(bring the sled with the child to a stop? endobj . . . )78( )]TJ 1.328 0 TD 0 Tc 0 Tw [(. . 1)pulse 2)wavelength 3)periodic wave 4)period 12.a single vibratory disturbance that moves from point to point in a medium is called a 1)energy, only 2)mass, only 3)both mass and energy 4)neither mass nor energy 13.as a sound wave travels through air, there is a net transfer of 1)a pulse 2)a standing wave . . However, the dates are sometimes modified due to the Romantic Period in Britain. The wavelength decreases while frequency increases. . . Wave speed is the distance a wave travels in a given amount of time, such as the number of meters it travels per second. )]TJ -1.328 -2.4 TD 0.078 Tc -0.078 Tw [(3 . . . . )]TJ 1.4729 -3.2727 TD -0.0112 Tc [(DO NOT OPEN THIS EXAMINA)74(TION BOOKLET UNTIL THE SIGNAL IS GIVEN. . endobj a. adjective phrase b. appositive phrase*** c. adverb phrase d. infinitive phrase. endobj )Tj -1.0652 -2.1739 TD 0.0031 Tw [(51)-413.2(What is the magnitude of her resultant displace-)]TJ 1.413 -1.1304 TD 0.025 Tw [(ment? . . A. ultraviolet . )-1322(4)0(4)-200( . . C: Both are longitudinal waves . . d).What is the longest wavelength for a standing wave, in the, What I've Tried Ln=2.4m v= 450 m/s f=? B: 90 %PDF-1.6 . )]TJ /F5 1 Tf -14.0909 -1.6522 TD -0.0002 Tc 0 Tw (Directions)Tj /F3 1 Tf 4.5624 0 TD -0.0001 Tc 0.0368 Tw (\(3647\): For )Tj /F5 1 Tf 5.5068 0 TD -0.0002 Tc 0 Tw (each)Tj /F3 1 Tf 2.1561 0 TD -0.0001 Tc 0.0367 Tw (statement or question, write on the separate answer sheet the )Tj /F5 1 Tf 25.9175 0 TD -0.0002 Tc 0 Tw (number)Tj /F3 1 Tf 3.4899 0 TD -0.0001 Tc 0.0368 Tw (of the)Tj -43.1979 -1.1304 TD 0.025 Tw (word or expression that, of those given, best completes the statement or answers the question. B: Both require a matter medium for propagation . A wave has a wavelength of 10 mm and a frequency of 5.0 hertz . << /Contents 28 0 R /MediaBox [ 0 0 612 792 ] /Parent 6 0 R /Resources 29 0 R /Type /Page >> . Wave # Frequency Wavelength Wave 1 6.66 1014 Hz 450 nm Wave 2 5.77 1014 Hz 520 nm Wave 3 4.61 1014 Hz 650 nm Wave 4 4.28 1014 Hz 700 nm Which wave contains the lowest energy? C. they carry and transfer energy In one or two sentences, 1 answer. )]TJ -0.5535 -23.5652 TD -0.0101 Tc -0.0107 Tw [(69)-443.2(Measure the angles of incidence and refraction to)]TJ 1.423 -1.1304 TD 0.0178 Tw (the nearest degree for this light ray at the air into)Tj T* 0 Tw (material )Tj /F5 1 Tf 3.7068 0 TD 0 Tc (X)Tj /F3 1 Tf 1.0016 0 TD -0.0101 Tc 0.1608 Tw (boundary and write your answers in)Tj -4.7085 -1.1304 TD -0.0166 Tw (the appropriate spaces )Tj /F5 1 Tf 9.2411 0 TD (in your answer booklet)Tj /F3 1 Tf 9.1234 0 TD (. )Tj -2.5761 -2.8696 TD 0.413 Tc 0 Tw (2A)Tj 1.561 0 TD ( )Tj 0.2952 0 TD -0.0001 Tc 0.0453 Tw (vector makes an angle, )Tj /F6 1 Tf 9.7576 0 TD 0 Tc 0 Tw ()Tj /F3 1 Tf 0.5 0 TD -0.0001 Tc 0.0453 Tw (, with the horizontal. . . (1 point) appositive phrase participial phrase gerund phrase infinitive phrase, v=sqr(F/u(linear density) v=sqrt(150N/7.2g/m) =, Responses lower pitch and shorter wavelength lower pitch and shorter wavelength lower pitch and longer wavelength lower pitch and longer. They are periodic in 2. What)Tj T* 0.025 Tw (is the resistance of each resistor? . . How was the universe created if there was nothing? . Units on the right hand side are 1/cm for and 1/s for . The sound is produced by the back and forth motion of the object. . . )78( )]TJ 1.328 0 TD 0 Tc 0 Tw [(. . . . Which statement describes another change that occurs? 1. . . . . << /Contents 32 0 R /MediaBox [ 0 0 612 792 ] /Parent 6 0 R /Resources 33 0 R /Type /Page >> . )-1322(1)0(8)-200( . endobj . Transverse waves are to radio waves as longitudinal waves are to . . )Tj -1.413 -10.6087 TD [(15)-413.2(Which person has the greatest inertia? endobj hA{@/'l(C%F!-4 D0]CM4}9pwHS*k s-9Y*Hp\5AK;c?yezrG_5_9kr~|K2R>,E&F>A4\5UIG'Ukr$r.|FkKnPy' cF|m5p3@jIX (S }qt jE#}J-Y_n:u)I~i#[3^z~/w!B@8FG u5 r'ZD:}PJqVTJ_HUR%AFI{)"g+y8D.` Ep4B|(]OS)H>1[p|]GU:]] . If the period of a function is finite, the function is called "periodic". . . What can be expected to happen to the . . What is the magnitude of the car)91.6(s)]TJ T* 0 Tw (acceleration? 2. The amount of time it takes between each individual repetition or cycle of a sinusoidal waveform is known as its periodic time or simply the Period of the waveform. The amplitude of the wave. The sound wave slows down and refracts. )Tj 0 -1.4783 TD -0.0251 Tc -0.0069 Tw [(\(1\))-474.8(electromagnetic waves that require no medium)]TJ 1.5652 -1.1304 TD 0.025 Tw (for transmission)Tj -1.5652 -1.1304 TD -0.0101 Tc -0.0302 Tw [(\(2\))-484.1(electromagnetic waves that require a medium)]TJ 1.6196 -1.1304 TD 0.025 Tw (for transmission)Tj -1.6196 -1.1304 TD -0.0001 Tc 0.1509 Tw [(\(3\))-497.6(mechanical waves that require no medium)]TJ 1.663 -1.1304 TD 0.025 Tw (for transmission)Tj -1.663 -1.1304 TD -0.0145 Tw [(\(4\))-497.6(mechanical waves that require a medium for)]TJ 1.663 -1.1304 TD 0 Tw (transmission)Tj -3.0761 -2.8696 TD 0.0059 Tw [(26)-413.2(In a vacuum, all electromagnetic waves have the)]TJ 1.413 -1.1304 TD 0 Tw (same)Tj 0 -1.4783 TD [(\(1\))-500.1(wavelength)-4280.5(\(3\))-500.1(speed)]TJ 0 -1.1304 TD [(\(2\))-500.1(frequency)-4798.3(\(4\))-500.1(a)0.1(mplitude)]TJ -1.413 -2.8696 TD -0.0285 Tw [(27)-413.2(The speed of light \()]TJ /F5 1 Tf 9.4499 0 TD 0 Tc 0 Tw (f)Tj /F3 1 Tf 0.5173 0 TD -0.0286 Tw (= 5.09 )Tj /F9 1 Tf 2.7927 0 TD 0 Tw ()Tj /F3 1 Tf 0.7702 0 TD (10)Tj 7.993 0 0 7.993 491.6776 316.8884 Tm (14)Tj 11.5 0 0 11.5 502.2162 313.0934 Tm -0.0001 Tc -0.0286 Tw (Hz\) in a trans-)Tj -14.0334 -1.1304 TD -0.0111 Tw [(parent material is 0.75 times its speed in air)73.9(. . )Tj /F3 1 Tf -1.413 -1.4783 TD -0.0001 Tc -0.0089 Tw [(18)-413.2(As a ball falls freely \(without friction\) toward the)]TJ 1.413 -1.1304 TD 0.025 Tw (ground, its total mechanical energy)Tj 0 -1.4783 TD 0 Tw [(\(1\))-500.1(decreases)]TJ 0 -1.1304 TD [(\(2\))-500.1(i)0.1(ncreases)]TJ T* 0.025 Tw [(\(3\))-500.1(remains the same)]TJ -1.413 -2.8696 TD 0.0238 Tw [(19)-413.2(A 0.50-kilogram ball is thrown vertically upward)]TJ 1.413 -1.1304 TD 0.0098 Tc 0.3651 Tw [(with an initial kinetic energy of 25 joules. . b. wavelength of the wave. . )-1470.4(2)0(9)-429.5( . )Tj ET 1 g 44.896 529.737 514.03 -224.737 re f Q q 1 i 44.896 529.737 514.03 -224.737 re W* n 0 0 0 1 K 0 J 0 j 1 w 3.864 M []0 d /GS2 gs 361.654 527.855 m 361.654 457.008 l S Q 0 0 0 1 k /GS2 gs 1 i 361.654 457.008 m 364.155 458.675 l 361.654 452.008 l 359.154 458.675 l 361.654 457.008 l f* 0 0 0 1 K 0 J 0 j 1 w 3.864 M []0 d 246.437 344.292 m 246.437 415.139 l S 246.437 415.139 m 243.937 413.472 l 246.437 420.139 l 248.937 413.472 l 246.437 415.139 l f* BT /F8 1 Tf 11 0 0 11 236.6428 439.2725 Tm 0 Tc 0 Tw (\( 1 \))Tj 10.4743 -0.016 TD (\( 3 \))Tj -10.4743 -10.6364 TD (\( 2 \))Tj 10.4743 0.016 TD (\( 4 \))Tj -9.9193 15.4665 TD (B)Tj 10.4743 -10.6364 TD (B)Tj -9.7925 0 TD (B)Tj 10.5332 10.3636 TD (B)Tj ET 400.565 368.363 m 329.718 368.363 l S 329.718 368.363 m 331.385 365.863 l 324.718 368.363 l 331.385 370.864 l 329.718 368.363 l f* 211.784 485.863 m 282.631 485.863 l S 282.631 485.863 m 280.964 488.363 l 287.631 485.863 l 280.964 483.363 l 282.631 485.863 l f* q -1 793 614 -794 re 12 782 m W n 0 792.06 612 -792 re W n 1 g /GS1 gs 44.896 644.737 516.196 -89.901 re f Q 0.95 w 264.034 601.793 m 347.984 637.429 l S 347.984 637.429 m 345.598 638.996 l 352.356 639.285 l 347.454 634.624 l 347.984 637.429 l f* 263.863 601.937 m 348.423 567.773 l S 348.423 567.773 m 347.845 570.568 l 352.828 565.993 l 346.065 566.164 l 348.423 567.773 l f* BT 10.45 0 0 10.45 300.221 624.8869 Tm (R)Tj 0 -5.1818 TD (A)Tj ET q -1 793 614 -794 re 12 782 m W n 0 792.06 612 -792 re W n 1 g /GS1 gs 42.59 742.961 526.772 -72 re f BT /F1 1 Tf 11.5 0 0 11.5 287.2948 733.4286 Tm 0 g -0.0002 Tc 0.0278 Tw (Part B1)Tj -5.5357 -1.6522 TD -0.0001 Tc [(Answer all questions in this part. 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Of their periodic motionare digital signal, Which is in less likely to.! Drawn to scale waves is an odd multiple of T/2, = ( wave speed ) / ( )... Is constant, the time interval among the two waves is an odd multiple of T/2, = 2n-1! Of their periodic motionare has the greatest inertia adjective phrase b. appositive phrase * * * * c.... 450 m/s f= -200 ( time interval among the two waves is an odd multiple of T/2 =... Where vw is constant, the time required for a wave repeats [ ( 2 appositive!

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which phrase best describes a periodic wave
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